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http://dx.doi.org/10.5916/jkosme.2008.32.7.1013

The Effect of Fuel Injection Timing on the Combustion and Emission Characteristics of a Natural Gas Fueled Engine at Part Loads  

Cho, Haeng-Muk (Division of Mechanical Engineering and Automotive Engineering, Kongju National Univeristy)
Abstract
For a sequential port fuel injection natural gas engine, its combustion and emission characteristics at low loads are crucial to meet light duty vehicle emission regulations. Fuel injection timing is an important parameter related to the mixture formation in the cylinder. Its effect on the combustion and emission characteristics of a natural gas engine were investigated at 0.2 MPa brake mean effective pressure (BMEP)/2000 rpm and 0.26 MPa BMEP/1500 rpm. The results show that early fuel injection timing is beneficial to the reduction of the coefficient of variation (COV) of indicated mean effective pressure (IMEP) under lean burn conditions and to extending the lean burn limits at the given loads. When relative air/fuel ratio is over 1.3, fuel injection timing has a relatively large effect on engine.out emissions. The levels of NOx emissions are more sensitive to the fuel injection timing at 0.26 MPa BMEP/1500 rpm. An early fuel injection timing under lean burn conditions can be used to control engine out NOx emissions.
Keywords
Natural gas; Emission; Lean burn; Combustion; Engine;
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  • Reference
1 L. H. Borges, C. Hollnagel and W. Muraro, Development of a Mercedes‐Benz natural gas engine M366LAG with a lean‐burn combustion system. Society of Automotive Engineers, USA (1996) 962378
2 P. Einewall, P. Tunestal and B. Johansson, Lean burn natural gas operation vs. stoichiometric operation with EGR and a three way catalyst, Society of Automotive Engineers, USA (2005) 2005‐01‐0250
3 T. Kato, K. Saeki, H. Nishide and T. Yamada, Development of CNG fueled engine with lean burn for small size commercial van, JSAE Review 22 (2001) 365-368   DOI   ScienceOn
4 P. L. Mtui and P. G. Hill, Ignition delay and combustion duration with natural gas fueling of diesel engines, Society of Automotive Engineers, USA (1996) 961933
5 R. Tilagone, G. Monnier, A. Chaouche, Y. Baguelin and S. De Chauveron, Development of a high efficiency, low emission SI‐CNG bus engine, Society of Automotive Engineers, USA (1996) 961080
6 A. Das and H. C. Watson, Development of a natural gas spark ignition engine for optimum performance, Proc. Inst. Mech. Eng., Part D: J Automob. Eng. 21 (1997) 361‐78
7 T. Yamato, H. Sekino, T. Ninomiya and M. Hayashida, Stratification of in‐cylinder mixture distributions by tuned port injection in a 4‐valve SI gas engine, Society of Automotive Engineers, USA (2001) 2001‐01‐0610
8 P. Corbo, M. Gambino, S. Iannaccone and A. Unich, Comparison between lean‐burn and stoichiometric technologies for CNG heavy‐duty engines, Society of Automotive Engineers, USA (1995) 950057
9 A. Manivannan, P. P. Tamil, S. Chandrasekan and R. Ramprabhu, Lean burn natural gas spark ignition engine ‐ An overview. Society of Automotive Engineers, USA (2003) 2003‐01‐0638